Department of Building, Civil and Environmental Engineering, Faculty of Engineering and Computer Sciences, Concordia University, Montreal, Quebec, Canada.
Department of Building, Civil and Environmental Engineering, Faculty of Engineering and Computer Sciences, Concordia University, Montreal, Quebec, Canada.
J Hazard Mater. 2019 Aug 5;375:86-95. doi: 10.1016/j.jhazmat.2019.04.069. Epub 2019 Apr 22.
Zinc hydroxyfluoride (Zn(OH)F) sonocatalyst was prepared by using solvothermal method and was characterized by using various techniques. The sonocatalytic degradation of ampicillin (AMP) in water by sonolysis, bare ZnO and Zn(OH)F was investigated in terms of AMP removal, mineralization, detoxification of solution, and remaining by-products at the end of process. Results revealed that the sonocatalytic performance of Zn(OH)F was significantly greater than that of bare ZnO. Under the optimum conditions, the removal percentage of AMP by Zn(OH)F was ∼97% after 90 min reaction, while 51% and 36% COD and TOC removal were achieved after 120 min reaction, respectively. The study of Zn(OH)F stability revealed that the degradation efficiency of AMP was reduced by only 5% even after being reused for four experiments. The toxicity of initial and treated solutions was assessed by using agar-well diffusion method and ToxTrak toxicity assay, and the results indicated a substantial reduction in the toxicity of solution after the treatment. The formation of some by-products during the sonolysis and sonocatalysis was evaluated by LC-HR-MS/MS method. LC-HR-MS/MS results showed that the concentration of most by-products, which were produced after 90 min treatment by US/Zn(OH)F process, was considerably lower than those obtained during sonolysis and US/ZnO processes.
水滑石(Zn(OH)F)超声催化剂通过溶剂热法制备,并采用多种技术进行了表征。考察了超声空化、纯 ZnO 和 Zn(OH)F 对水中氨苄青霉素(AMP)的超声降解性能,从 AMP 去除率、矿化率、溶液解毒和过程结束时的残留副产物等方面进行了评价。结果表明,Zn(OH)F 的超声催化性能明显优于纯 ZnO。在最佳条件下,Zn(OH)F 反应 90min 后 AMP 的去除率约为 97%,而 120min 后 COD 和 TOC 的去除率分别为 51%和 36%。Zn(OH)F 稳定性研究表明,即使重复使用四次,AMP 的降解效率也仅降低了 5%。采用琼脂扩散法和 ToxTrak 毒性测定法评价初始溶液和处理后溶液的毒性,结果表明处理后溶液的毒性显著降低。通过 LC-HR-MS/MS 方法评估了超声空化和超声催化过程中一些副产物的形成。LC-HR-MS/MS 结果表明,在 US/Zn(OH)F 工艺处理 90min 后产生的大多数副产物的浓度明显低于超声空化和 US/ZnO 工艺产生的浓度。